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鲤科鱼类斑马鱼在暗视条件下长波长视锥细胞的活性。

Activity of long-wavelength cones under scotopic conditions in the cyprinid fish Danio aequipinnatus.

作者信息

van Roessel P, Palacios A G, Goldsmith T H

机构信息

Department of Molecular, Cellular, and Developmental Biology, Yale University, New Haven 06520-8103, USA.

出版信息

J Comp Physiol A. 1997 Nov;181(5):493-500. doi: 10.1007/s003590050133.

Abstract

In carp (Cyprinus) and goldfish (Carassius), long-wavelength cones are reported to be active under scotopic conditions. Using the electroretinogram (ERG), we tested another cyprinid fish, Danio aequipinnatus, which contains A1-based visual pigments and for which we had previously measured the spectral sensitivities of individual cones. Dark adaptation curves show a rod/cone break at about 45 min. When thoroughly dark-adapted, the spectral sensitivity function is broader than can be accounted for by self-screening of rhodopsin, but it can be modeled by an additive combination of rods and the 560-nm cones. Dim, red background light causes adaptation of rods and a broadening of the spectral sensitivity function, which can be simulated by increasing the proportion of cones in the model. Brighter red backgrounds adapt the 560-nm cones. Because of the effect of red adapting lights, the ERG evidence for the participation of long-wavelength cones close to visual threshold appears to be different in Danio than in the goldfish Carassius.

摘要

据报道,在鲤鱼(鲤属)和金鱼(鲫属)中,长波长视锥细胞在暗视条件下是活跃的。我们使用视网膜电图(ERG)对另一种鲤科鱼类——等鳍斑马鱼进行了测试,这种鱼含有基于A1的视觉色素,并且我们之前已经测量了单个视锥细胞的光谱敏感性。暗适应曲线显示在大约45分钟时出现视杆细胞/视锥细胞转折点。当完全暗适应时,光谱敏感性函数比视紫红质的自我屏蔽所能解释的范围更宽,但它可以通过视杆细胞和560纳米视锥细胞的相加组合来模拟。昏暗的红色背景光会引起视杆细胞的适应以及光谱敏感性函数的拓宽,这可以通过增加模型中视锥细胞的比例来模拟。更亮的红色背景会使560纳米视锥细胞适应。由于红色适应光的作用,在等鳍斑马鱼中,接近视觉阈值时长波长视锥细胞参与的ERG证据似乎与金鱼鲫属不同。

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